US10623006B2

Apparatus and methods for compensation of signal path delay variation

Summary by NHIP

Electronic system with delay compensation

The electronic system uses an integrated circuit to generate output signals while digitally compensating for signal path delay variations. A delay model within the circuit generates estimates based on operating conditions, such as temperature, using stored coefficients to adjust timing.

Claim Score by NHIP

Read claim 15, the broadest

Abstract

Apparatus and methods for clock synchronization and frequency translation are provided herein. Clock synchronization and frequency translation integrated circuits (ICs) generate one or more output clock signals having a controlled timing relationship with respect to one or more reference signals. The teachings herein provide a number of improvements to clock synchronization and frequency translation ICs, including, but not limited to, reduction of system clock error, reduced variation in clock propagation delay, lower latency monitoring of reference signals, precision timing distribution and recovery, extrapolation of timing events for enhanced phase-locked loop (PLL) update rate, fast PLL locking, improved reference signal phase shift detection, enhanced phase offset detection between reference signals, and/or alignment to phase information lost in decimation.

US10623006B2, drawing sheet 1
Sheet 1 of 38

Term

11.7 yearsleft in the term

Expires 19 June 2038.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

20 claims: 3 independent, 17 dependent

  1. 1
    An electronic system with compensation for signal path delay variation, the electronic system comprising:an integrated circuit (IC) comprising: a timing circuit configured to generate an output signal based on timing of an input reference signal;an output pin configured to receive the output signal from the timing circuit;a delay compensation circuit configured to provide one or more compensation signals to the timing circuit, the delay compensation circuit comprising a delay model;and a memory storing one or more coefficients of the delay model;and a signal path configured to route the output signal from the output pin to a destination node, wherein the one or more compensation signals are operable to digitally compensate the timing circuit for a variation in delay of the signal path, wherein the delay model is configured to generate a modeled estimate of the variation in delay of the signal path based on one or more operating conditions.
  2. 9
    An integrated circuit (IC) with compensation for signal path delay variation, the IC comprising:a timing circuit configured to generate an output signal based on timing of an input reference signal;an output pin configured to provide the output signal to a destination node via a signal path;a return path pin configured to receive a returned signal from the signal path;a delay compensation circuit configured to generate one or more compensation signals operable to digitally compensate the timing circuit for a variation in delay of the signal path to thereby control a phase of the output signal at the destination node relative to a phase of the input reference signal;and a delay difference detector configured to provide the delay compensation circuit with an estimate of the delay of the signal path based on comparing the output signal to the returned signal.
  3. 15
    Broadest claimClaim Score 57, average(NHIP)A method of signal path delay compensation in an electronic system, the method comprising:generating an output signal based on an input reference signal using a timing circuit of an integrated circuit (IC);providing the output signal from an output pin of the IC to a destination node via a signal path, and receiving a return signal on a return signal pin of the IC;and digitally compensating the timing circuit for variation in delay of the signal path to thereby control a phase of the output signal at the destination node relative to a phase of the input reference signal, including estimating the variation in delay based on comparing the output signal to the return signal, and generating one or more digital compensation signals for digitally compensating the timing circuit based on the estimated error.